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The complex journey of targeting RAS in oncology
Katarzyna Wasiak1,2, Damian Ciunowicz3,4, Amelia Kierasińska-Kałka3,5
1Department of Research and Development, Personather Ltd., Inwestycyjna 7, Konstantynow Lodzki, 95 - 050, Poland. katarzyna.wasiak@umed.lodz.pl.
Abstract:
Given the prevalence of RAS mutations in various cancers, personalized therapeutic approaches, guided by molecular markers, are essential. Farnesyltransferase inhibitors (FTIs) have emerged as potential therapeutic options; however, they also face obstacles such as toxicity and limited efficacy. Alternative strategies, such as direct inhibitors combined with pathway modulators, RNA interference, and gene-editing technologies, are under clinical investigation. The targeting of RAS, complicated by its structural nuances, particularly in the G domain, has advanced with the identification of druggable pockets such as the SW-II pocket. This breakthrough has led to the development of targeted therapeutics, such as sotorasib and adagrasib, for KRAS G12C-mutated non-small cell lung cancer (NSCLC). However, these advancements face challenges, including adaptive resistance and the necessity for isoform selectivity. New inhibitors, such as LY3537982 or GDC-6036, are promising, but achieving effective and selective RAS inhibition remains a significant challenge. Additionally, clinical trials have highlighted variability in patient responses, attributing limited treatment efficacy to resistance mechanisms, including on-target mutations and off-target pathway activations. Finally, the RAS oncogene, traditionally viewed as predominantly pro-cancerous, plays a complex role in oncogenesis, with recent evidence suggesting context-dependent effects, such as inducing senescence in certain cells. This shift in understanding underscores the therapeutic potential of manipulating the interplay between RAS and TP53 mutations in cancer. In conclusion, the complexity of effectively targeting the RAS-RAF-ERK pathway is exacerbated by the diverse resistance mechanisms. Challenges such as off-target effects and delivery issues remain significant barriers in the introduction of effective therapies based on RAS inhibitors. This overview highlights the evolving nature of targeting RAS in cancer therapy.
Insights
Targeting RAS mutations in cancer is complex due to resistance mechanisms and off-target effects. New inhibitors show promise but effective, selective RAS inhibition remains a significant challenge for personalized cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- RAS mutations are prevalent in various cancers, necessitating personalized therapeutic strategies.
- Farnesyltransferase inhibitors (FTIs) show potential but face toxicity and efficacy limitations.
- Targeting RAS is complicated by its structural nuances, particularly in the G domain.
Purpose of the Study:
- To review the challenges and advancements in targeting RAS oncogenes for cancer therapy.
- To discuss emerging therapeutic strategies and their clinical implications.
- To highlight the complexity of RAS-RAF-ERK pathway inhibition and resistance mechanisms.
Main Methods:
- Review of current literature on RAS-targeted therapies.
- Analysis of clinical trial data for RAS inhibitors.
- Exploration of novel drug development and gene-editing technologies.
Main Results:
- Development of targeted therapeutics like sotorasib and adagrasib for KRAS G12C-mutated NSCLC.
- Identification of druggable pockets, such as the SW-II pocket, advancing RAS targeting.
- Emergence of new inhibitors (e.g., LY3537982, GDC-6036) but challenges in selectivity and efficacy persist.
Conclusions:
- Effective RAS inhibition is hindered by adaptive resistance, isoform selectivity issues, and off-target effects.
- Understanding the complex role of RAS in oncogenesis, including context-dependent effects, is crucial.
- Overcoming delivery issues and resistance mechanisms is key for successful RAS-targeted cancer therapies.
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